Difference between revisions of "Remarks on the Transformations of Space and Time"

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==Abstract==
 
==Abstract==
  
Space and time transformations from a "stationary" isotropic inertial system S0 to any other inertial system S are shown to imply complete physical equivalence between the three possible pairs of assumptions chosen among the following: A1. Lorentz contraction of bodies moving with respect to S0; A2. Larmor retardation of clocks moving with respect to S0; A3. Two-way velocity of light equal to c in all inertial systems and in all directions. The empirical evidence supporting A2 and A3 is therefore in favour of A1 as well.[[Category:Scientific Paper]]
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Space and time transformations from a "stationary" isotropic inertial system S0 to any other inertial system S are shown to imply complete physical equivalence between the three possible pairs of assumptions chosen among the following: A1. Lorentz contraction of bodies moving with respect to S0; A2. Larmor retardation of clocks moving with respect to S0; A3. Two-way velocity of light equal to c in all inertial systems and in all directions. The empirical evidence supporting A2 and A3 is therefore in favour of A1 as well.
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[[Category:Scientific Paper|remarks transformations space time]]

Latest revision as of 11:01, 1 January 2017

Scientific Paper
Title Remarks on the Transformations of Space and Time
Read in full Link to paper
Author(s) Franco Selleri
Keywords isotropic inertial system, Lorentz contraction of bodies, Larmor retardation of clocks
Published 1997
Journal Apeiron
Volume 4
Number 4
No. of pages 5
Pages 100-103

Read the full paper here

Abstract

Space and time transformations from a "stationary" isotropic inertial system S0 to any other inertial system S are shown to imply complete physical equivalence between the three possible pairs of assumptions chosen among the following: A1. Lorentz contraction of bodies moving with respect to S0; A2. Larmor retardation of clocks moving with respect to S0; A3. Two-way velocity of light equal to c in all inertial systems and in all directions. The empirical evidence supporting A2 and A3 is therefore in favour of A1 as well.